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monika schleier smith education

Davis, E. J., Wang, Z., Safavi-Naeini, A. H., Schleier-Smith, M. H. Floquet Symmetry-Protected Topological Phases in Cold-Atom Systems. Schleier-Smith MH, Van Buuren LD, Doyle JM, Dzhosyuk SN, Gilliam DM, Mattoni CEH, McKinsey DN, Yang L, Huffman PR. A., Rajagopal, S. V., Schleier-Smith, M. Integrable and Chaotic Dynamics of Spins Coupled to an Optical Cavity. Dynamic optical superlattices with topological bands. Two local scholars are among 21 recipients of this year’s MacArthur fellowships, colloquially known as genius grants, the John D. and Catherine T. … Monika Schleier-Smith is an American experimental physicist studying many-body quantum physics by precisely assembling systems of ultracold atoms. We study experimentally the application of a class of entangled states, squeezed spin states, to the improvement of atomic-clock precision. Summary: Monika Schleier-Smith lives in Palo Alto, CA; previous cities include Mc Lean VA and Cambridge MA. She subsequently pursued graduate studies in experimental atomic physics at MIT. [9], She is a recipient of the 2019 Presidential Early Career Award for Scientists and Engineers. In between the few­-particle realm where we have mastered quantum mechanics and the macroscopic domain describable by classical physics, there lies a broad swath of territory where quantum effects are relevant but still largely out of our control and partly beyond our comprehension. View phone numbers, addresses, public records, background check reports and possible arrest records for Monika Schleier Smith. Tweet Google iCal Email. On the basis of expansion measurements, molecules with a velocity and a position spread of 2.1 m/s and 0.4 mm, respectively, are still accepted by the trap. The trap is loaded with slow 15ND3 molecules in their ground state (para-ammonia) from a Stark decelerator. in 2005 from Harvard University, having studied Chemistry and Physics and (secondarily) Mathematics. Schleier-­Smith received her B.A. Whitepages people search is the most trusted directory. The carbon-carbon bond lengths in nanotubes differ slightly from those in flat graphite, so that the naively commensurate angular orientations for the tube with respect to the substrate lattice are destroyed. We deterministically generate states with up to 5.6(6) dB of metrologically relevant spin squeezing on the canonical 87Rb hyperfine clock transition. We demonstrate cavity sideband cooling of a single collective motional mode of an atomic ensemble down to a mean phonon occupation number ⟨n⟩(min⁡)=2.0(-0.3)(+0.9). In condensed-matter systems, a wide range of phenomena stem from the geometry of the band eigenstates, which is encoded in the matrix-valued Wilson line for general multiband systems. [7] Subsequently, Schleier-Smith conducted postdoctoral research at LMU Munich and Max Planck Institute of Quantum Optics. Monika Schleier-Smith Stanford University I”ve been playing around with the new “Quantum Game with Photons”. Our technique enables a full determination of band eigenstates, Berry curvature, and topological invariants, including single- and multiband Chern and Z₂ numbers. Schleier-Smith is an Associate Professor of Physics at Stanford University and recently received a MacArthur Fellowship. [4] Schleier-Smith also serves on the board of directors for the Hertz Foundation.[5]. Rev. in Chemistry and Physics, with a minor in Mathematics, from Harvard University. Learn More about Department Colloquium | Interfacing Spins with Photons for Quantum Simulation and Quantum Control As an experimental physicist in the field of quantum information science, Schleier-Smith focuses on the idea that information does not need to be encoded locally in individual particles but rather can be stored in correlations between different particles. According to Schleier-Smith, "Hybrid systems are likely to harbor surprises that will fuel quantum science for decades to come". Furthermore, we clarify the distinction between the equilibrium and Floquet SPT phases by identifying a unique micromotion-based entanglement spectrum signature of the latter. [2] Schleier-Smith is an Associate Professor of Physics at Stanford University,[3] a Sloan Research Fellow,[1] and a National Science Foundation CAREER Award recipient. We investigate the interaction of a carbon nanotube with a graphite substrate, using an interlayer potential that explicitly treats the registry dependence of the interaction. She received her Ph.D. in 2011 from the Massachusetts Institute of Technology and subsequently pursued postdoctoral research at the LMU Munich and Max Planck Institute of Quantum Optics. … From 2011 to 2013, she served as a postdoctoral fellow at the Max Planck Institute of Quantum Optics and Ludwig Maximilian University. The trap's geometry offers optimal access as well as improved loading. We squeeze unconditionally the collective spin of a dilute ensemble of laser-cooled 87Rb atoms using their interaction with a driven optical resonator. ... Monika Schleier-Smith. The resonator-enhanced measurement leaves the atomic ensemble, prepared in a superposition of hyperfine clock levels, in a squeezed spin state. We generate entangled states of an ensemble of 5x10{4} 87Rb atoms by optical quantum nondemolition measurement. Monika has many family members and associates who include Katherine Ferrara, Curtis Milhaupt, David Reilly, Michelle James and Dafna Zur. Professor Schleier­-Smith’s research aims to advance our control and understanding of many­-particle quantum systems by engineering new quantum states and Hamiltonians with ensembles of laser-cooled atoms. We are thrilled to share an edited summary of their conversation. Monika Schleier-Smith Asst Professor of Physics Schleier-­Smith received her B.A. in 2005 from Harvard University, having studied Chemistry and Physics and (secondarily) Mathematics. Her research centers on advancing control and understanding of quantum many-body systems through experiments with laser-cooled atoms. Schleier-Smith graduated from the Thomas Jefferson High School for Science and Technology in Alexandria, Virginia and went on to attend Harvard University as an undergraduate, receiving a B.A. This territory includes metrological instruments whose precision is limited by the quantum projection noise of millions of atoms; and materials whose bulk properties emerge from many-­body interactions intractable to simulation on classical computers. To overcome this issue, we consider an alternate route based upon realizing an intrinsically Floquet SPT phase that does not have any equilibrium analog. The production of nitrogen-13 by neutron capture in boron compounds Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions With Materials and Atoms . Davis, E., Bentsen, G., Schleier-Smith, M. An Aharonov-Bohm interferometer for determining Bloch band topology. Duca, L., Li, T., REITTER, M., Bloch, I., Schleier-Smith, M., Schneider, U. Orientation-Dependent Entanglement Lifetime in a Squeezed Atomic Clock. We propose and analyze two distinct routes toward realizing interacting symmetry-protected topological (SPT) phases via periodic driving. She subsequently pursued … Marino, J., Shchadilova, Y. E., Schleier-Smith, M., Demler, E. A. Bentsen, G. S., Davis, E. J., Homeier, L., Periwal, A., Cooper, E., Van Kirk, K., Schleier-Smith, M. H., Shahriar, S. M., Scheuer, J. One- and two-axis squeezing of atomic ensembles in optical cavities. Borregaard, J., Davis, E. J., Bentsen, G. S., Schleier-Smith, M. H., Sorensen, A. S. Advantages of Interaction-Based Readout for Quantum Sensing. Leroux, I. D., Schleier-Smith, M. H., Zhang, H., Vuletic, V. Optomechanical Cavity Cooling of an Atomic Ensemble. [10], In 2020, Schleier was awarded a MacArthur Fellowship in recognition of her work. Monika Schleier-Smith received an AB (2005) from Harvard University and a PhD (2011) from the Massachusetts Institute of Technology. Davis, E. J., Periwal, A., Cooper, E. S., Bentsen, G., Evered, S. J., Van Kirk, K., Schleier-Smith, M. H. Transverse-Field Ising Dynamics in a Rydberg-Dressed Atomic Gas. View details for DOI 10.1103/PhysRevLett.104.250801, View details for Web of Science ID 000279178900001. Finally, we propose a unifying implementation in a one-dimensional chain of Rydberg-dressed atoms and show that protected edge modes are observable on realistic experimental time scales. [1] Her Ph.D. thesis introduced a quantum-enhanced atomic clock [6] and was recognized by the Hertz Foundation with a Doctoral Thesis Prize. Stanford professors Monika Schleier-Smith, a quantum physicist, and Forrest Stuart, a sociologist, both received “genius grants” from the John D. … James Wootton IBM Research Tweet by @decodoku Topology and geometry are essential to our understanding of modern physics, underlying many foundational concepts from high-energy theories, quantum information, and condensed-matter physics. Because of his advice, I brought my unique perspective as a high school student when contacting Rep. Tonko. The research, she said, could even lead to a better understanding of black holes. View details for DOI 10.1103/PhysRevLett.104.073602, View details for Web of Science ID 000274664500021. This corresponds to a temperature of 2.0 mK. Schleier-­Smith received her B.A. These atomic, molecular, and optical physics (AMO) engineered systems have applications in quantum sensing, coherent control, and quantum computing. In the presence of anisotropic noise, the entanglement lifetime is strongly dependent on squeezing orientation. The geometric structure of a single-particle energy band in a solid is fundamental for a wide range of many-body phenomena and is uniquely characterized by the distribution of Berry curvature over the Brillouin zone. Monika Schleier-Smith combines persistence and clarity of vision to do impressive experimental work. The White House, following recommendations from participating agencies, confers the awards annually. After receiving her Ph.D. in 2011, she was a postdoctoral fellow at the Max Planck Institute of Quantum Optics and Ludwig Maximilian­ University (LMU Munich), before arriving at Stanford in the fall of 2013. Monika Schleier-Smith (Stanford) News and Events; All News & Features; All Events; Archived Events; Special Lectures; K-12 Programs; Saturday Morning Physics; Seminars & Colloquia; Wednesday, March 7, 2018 4:00-5:00 PM 340 West Hall Map. She subsequently pursued graduate studies in experimental atomic physics at MIT. "Creativity is often viewed as something that comes entirely from within, but it’s so important to be in a stimulating environment." In the fall of 2013, Schleier-Smith joined the Stanford faculty as an Assistant Professor of Physics. Afterwards, Schleier-Smith pursued graduate studies with the supervision of Vladan Vuletic at MIT on a National Science Foundation Graduate Research Fellowship. We deduce fundamental limits to cavity cooling either the collective mode or, sympathetically, the single-atom degrees of freedom. We are thrilled to share an edited summary of their conversation. Steve Berg Director Special Education Management Services sberg@misd.net PAC Hotline 586-226-4587. He explained that “no one cares” if he as a computer scientist were to advocate for AI education, but it would be rare and interesting for a high school student to do so. Monika Schleier-Smith, ’05, an experimental physicist at Stanford University who studies the behavior of many-particle quantum systems. Back in her days as a grad student at MIT, she was part of a group of physicists that choreographed a kind of “ dance ” meant to help them internalize the way these mind-bending phenomena operate. Yet our ability to produce, understand, and exploit such correlations is hampered by the fact that the … Our work forms the basis for a general framework to fully characterize topological band structures. Stanford University. So far it feels like all the fun parts of doing undergraduate physics experiments, while also being a really nice puzzle game! Whitepages people search is the most trusted directory. View phone numbers, addresses, public records, background check reports and possible arrest records for Monika Schleier Smith in New York (NY). View details for DOI 10.1103/PhysRevLett.107.143005, View details for Web of Science ID 000295328200003, View details for DOI 10.1103/PhysRevA.81.021804, View details for Web of Science ID 000275072500022. Li, T., Duca, L., Reitter, M., Grusdt, F., Demler, E., Endres, M., Schleier-Smith, M., Bloch, I., Schneider, U. Schleier-Smith is an Associate Professor of Physics at Stanford University and recently received a MacArthur Fellowship. Dr. Monika Schleier-Smith As it turns out, developing mental images for complex quantum phenomena has long been a priority of Schleier-Smith’s. Monica Starkman, M.D., is a proud alumna of the University of Michigan Medical School, class of 1963, and the University of Michigan Department of Psychiatry residency program … Schleier-­Smith received her B.A. Monika H. Schleier-Smith PhD ’11, associate professor of physics at Stanford University. Her Ph.D. thesis introduced a quantum-enhanced atomic clock and was recognized by the He… View details for DOI 10.1103/PhysRevLett.104.073604, View details for Web of Science ID 000274664500023, View details for DOI 10.1088/1367-2630/aaf825, View details for Web of Science ID 000455842800005, View details for Web of Science ID 000466478500031, View details for DOI 10.1126/science.aax0143, View details for DOI 10.1088/1367-2630/aa8438, View details for Web of Science ID 000424942700001, View details for Web of Science ID 000417339300010, View details for DOI 10.1103/PhysRevLett.117.100001, View details for DOI 10.1103/PhysRevA.89.051605, View details for Web of Science ID 000338036000001, View details for DOI 10.1103/PhysRevA.88.063802, View details for Web of Science ID 000328567900011, View details for DOI 10.1103/PhysRevA.85.013803, View details for Web of Science ID 000298860400019. She subsequently pursued … [8] An important regime under investigation is the entanglement frontier. Schleier-Smith graduated from the Thomas Jefferson High School for Science and Technology in Alexandria, Virginia and went on to attend Harvard University as an undergraduate, receiving a B.A. Both ⟨n⟩(min) and the observed cooling rate are in good agreement with an optomechanical model. in 2005 from Harvard University, having studied Chemistry and Physics and (secondarily) Mathematics. View details for DOI 10.1126/science.aad5812, View details for Web of Science ID 000376480800037, View details for DOI 10.1103/PhysRevLett.116.053601, View details for Web of Science ID 000369491700004. Bentsen, G., Potirniche, I., Bulchandani, V. B., Scaffidi, T., Cao, X., Qi, X., Schleier-Smith, M., Altman, E. Treelike Interactions and Fast Scrambling with Cold Atoms. Davis, E., Bentsen, G., Li, T., Schleier-Smith, M., Hasan, Z. U., Hemmer, P. R., Lee, H., Migdall, A. L. Editorial: Hybridizing Quantum Physics and Engineering. Monika Schleier-Smith, Stanford University, The power of quantum information lies in its capacity to be non-local, encoded in correlations among entangled particles. Articles Cited by Co-authors. This phase remains stable only within a parametric time scale controlled by the driving frequency, beyond which its topological features break down. Monika Schleier-­Smith is an associate professor in the physics department at Stanford University. Baur, S. K., Schleier-Smith, M. H., Cooper, N. R. Generating entangled spin states for quantum metrology by single-photon detection. A (to be published)]] through 2 orders of magnitude in the effective interaction strength, without free parameters. A linear AC trap for polar molecules in high-field seeking states has been devised and implemented, and its characteristics have been investigated both experimentally and theoretically. View details for DOI 10.1103/PhysRevLett.92.085503, View details for Web of Science ID 000189266100028, I. I. Rabi Prize in Atomic, Molecular, and Optical Physics, American Physical Society (2021), MacArthur Fellowship, MacArthur Foundation (2020), Presidential Early Career Award for Scientists and Engineers (PECASE), Department of Defense (2019), NSF CAREER Award, National Science Foundation (2018), Cottrell Scholar Award, Research Corporation (2017), Hellman Fellowship, Hellman Fellows Fund (2015), AFOSR Young Investigator Award, Air Force Office of Scientific Research (2014), Alfred P. Sloan Research Fellowship, Alfred P. Sloan Foundation (2014), Ph.D., Massachusetts Institute of Technology, Physics (2011), A.B., Harvard University, Chemistry & Physics, Mathematics (2005). Schleier-Smith studies quantum mechanics, the … Background Checks View details for DOI 10.1103/PhysRevA.94.040302, View details for Web of Science ID 000390069700001. Atomic Physics Quantum Optics. Borish, V., Markovic, O., Hines, J. View details for Web of Science ID 000248478700021. Sort. in 2005 from Harvard University, having studied Chemistry and Physics and (secondarily) Mathematics. We measure the Allan deviation spectrum of a clock operated with a phase-squeezed input state. Swingle, B., Bentsen, G., Schleier-Smith, M., Hayden, P. Bloch state tomography using Wilson lines. The shape and size of the resulting spin uncertainty region are well described by a simple analytical model [M. H. Schleier-Smith, I. D. Leroux, and V. Vuletić, arXiv:0911.3936 [Phys. Using an ultracold gas of rubidium atoms loaded in a honeycomb optical lattice, we realize strong-force dynamics in Bloch bands that are described by Wilson lines and observe an evolution in the band populations that directly reveals the band geometry. Monika Schleier-Smith Associate Professor of Physics Curriculum Vitae available Online Bio BIO Schleier-Smith received her B.A. Eric Cooper, Jacob Hines, Ognjen Markovic, Protecting Spin Coherence in a Tunable Heisenberg Model. Approaching the Heisenberg Limit without Single-Particle Detection. Leroux, I. D., Schleier-Smith, M. H., Vuletic, V. Implementation of Cavity Squeezing of a Collective Atomic Spin, States of an Ensemble of Two-Level Atoms with Reduced Quantum Uncertainty. [5] During her time in Boston, Schleier-Smith also completed the Boston Marathon six times. For averaging times up to 50 s the squeezed clock achieves a given precision 2.8(3) times faster than a clock operating at the standard quantum limit. We realize an atomic interferometer to measure Berry flux in momentum space, in analogy to an Aharonov-Bohm interferometer that measures magnetic flux in real space. Davis, E. J., Bentsen, G., Homeier, L., Li, T., Schleier-Smith, M. H. Painting Nonclassical States of Spin or Motion with Shaped Single Photons. Other names that Monika uses includes Monika Schleier Smith, Monika Helene Schleier-smith and Monika H Schleier Smith. : (650) 497-3069 382 Via Pueblo Mall E-mail: schleier@stanford.edu Stanford, CA 94305 Web: sites.stanford.edu/sslab Education Massachusetts Institute of … Schnell, M., Lutzow, P., van Veldhoven, J., Bethlem, H. L., Kupper, J., Friedrich, B., Schleier-Smith, M., Haak, H., Meijer, G. Nanotube-substrate interactions: Distinguishing carbon nanotubes by the helical angle. In both cases, we show that disorder, leading to many-body localization, prevents runaway heating and enables the observation of coherent quantum dynamics at high energy densities. in 2005 from Harvard University, having studied Chemistry and Physics and (secondarily) Mathematics. Sort by citations Sort by year Sort by title. Monika schleier-smith thesis >>> click to order essay Education system in 21st century essay But my favorite story was from a teacher that did the ap lit grading hard on the open ended and prose prompt, and then for the final essay, she began, i ended up writing 200+ words aboutthe health benefits of being sad. Dr. Monika Schleier-Smith is an American experimental physicist studying many-body quantum physics by precisely assembling systems of ultracold atoms. The cooling rate constant is proportional to the total photon scattering rate by the ensemble, demonstrating the cooperative character of the light-emission-induced cooling process. Johann Schleier-Smith is Board Member at Samasource Inc. See Johann Schleier-Smith's compensation, career history, education, & memberships. ... membership organization dedicated to public engagement in scientific research and education. The molecules are found to oscillate in the trap under the influence of the trapping forces, which were analyzed using 3D numerical simulations. First, we demonstrate that a driven transverse-field Ising model can be used to engineer complex interactions which enable the emulation of an equilibrium SPT phase. Verified email at stanford.edu - Homepage. The Schleier-Smith Lab exploits precise hybrid light-matter interactions to demonstrate engineered dynamics in cold atom systems. By detecting the singular π Berry flux localized at each Dirac point, we establish the high momentum resolution of this interferometric technique. Forrest Stuart's fellowship recognizes the … View details for DOI 10.1126/science.1259052, View details for Web of Science ID 000347915300040. in Chemistry and Physics and (secondarily) Mathematics. View details for DOI 10.1103/PhysRevLett.125.060402, View details for Web of Science ID 000554827700002, View details for DOI 10.1103/PhysRevLett.124.063601, View details for Web of Science ID 000513240600002, View details for DOI 10.1103/PhysRevX.9.041011, View details for Web of Science ID 000490174600001, View details for DOI 10.1103/PhysRevLett.123.130601, View details for Web of Science ID 000487744600001, View details for DOI 10.1103/PhysRevLett.122.010405, View details for Web of Science ID 000455368500002, View details for DOI 10.1103/PhysRevLett.121.123602, View details for Web of Science ID 000444961000001. Monika Schleier-Smith was honored with a MacArthur Fellowship for her creative approach to studying many-particle quantum systems. Background Checks [11], reliable, independent, third-party sources, Learn how and when to remove this template message, Thomas Jefferson High School for Science and Technology, National Science Foundation Graduate Research Fellowship, Presidential Early Career Award for Scientists and Engineers, "Author Profile, American Physical Society", "Monika Schleier-Smith's Profile | Stanford Profiles", "Hybridizing Quantum Physics and Engineering", "President Donald J. Trump Announces Recipients of the Presidential Early Career Award for Scientists and Engineers", "MacArthur 'Genius' Grant Winners for 2020: The Full List", https://en.wikipedia.org/w/index.php?title=Monika_Schleier-Smith&oldid=1004523342, Articles lacking reliable references from May 2019, Wikipedia articles with WorldCat-LCCN identifiers, Creative Commons Attribution-ShareAlike License, Quantum systems of interacting atoms, photons and phonons, This page was last edited on 3 February 2021, at 01:01. Potirniche, I., Potter, A. C., Schleier-Smith, M., Vishwanath, A., Yao, N. Y. From numerical simulations, we find the phase-space volume that can be confined by the trap (the acceptance) to be 50 mm3 (m/s)3. What was it like to conduct science research when you were a high school student, and how did it … Kolmogorov, A. N., Crespi, V. H., Schleier-Smith, M. H., Ellenbogen, J. C. School of Earth, Energy and Environmental Sciences, Freeman Spogli Institute for International Studies, Institute for Computational and Mathematical Engineering (ICME), Institute for Human-Centered Artificial Intelligence (HAI), Institute for Stem Cell Biology and Regenerative Medicine, Stanford Institute for Economic Policy Research (SIEPR), Stanford Woods Institute for the Environment, Office of VP for University Human Resources, Office of Vice President for Business Affairs and Chief Financial Officer, Quantum Information: Visions and Emerging Technologies, Thermodynamics, Kinetic Theory, and Statistical Mechanics I. Monika Schleier-Smith, assistant professor of physics at Stanford, wants to build a quantum simulator made of atoms to test how quantum information spreads. McConnell, R., Zhang, H., Cuk, S., Hu, J., Schleier-Smith, M. H., Vuletic, V. Unitary cavity spin squeezing by quantum erasure. in Chemistry and Physics and (secondarily) Mathematics. [1] Afterwards, Schleier-Smith pursued graduate studies with the supervision of Vladan Vuletic at MIT on a National Science Foundation Graduate Research Fellowship. Monika Schleier-Smith. Title. Not for Monika Schleier-Smith, associate professor of physics at Stanford University and 2020 MacArthur Fellow. The Presidential Early Career Award for Scientists and Engineers (PECASE) is the highest honor bestowed by the United States government on outstanding scientists and engineers in the early stages of their independent research careers. Schleier-Smith received her A.B. Measuring the scrambling of quantum information. Monika H. Schleier-Smith Curriculum Vitae Contact Information Varian Physics Building Tel. Bentsen, G., Hashizume, T., Buyskikh, A. S., Davis, E. J., Daley, A. J., Gubser, S. S., Schleier-Smith, M. Photon-Mediated Spin-Exchange Dynamics of Spin-1 Atoms. Schleier-Smith, M. H., Leroux, I. D., Vuletic, V. Spectrum, Landau-Zener theory and driven-dissipative dynamics of a staircase of photons. By comparing the resulting reduction of quantum projection noise [up to 8.8(8) dB] with the concomitant reduction of coherence, we demonstrate a clock input state with spectroscopic sensitivity 3.0(8) dB beyond the standard quantum limit. We present measurements of the dependence of the trap's performance on the switching frequency, which exhibit a characteristic structure due to nonlinear resonance effects. Monika DeLuca Administrative Assistant Special Education Management Services mdeluca@misd.net 586 … We demonstrate the interferometer for a graphene-type hexagonal optical lattice loaded with bosonic atoms. Schleier-Smith, M. H., Leroux, I. D., Zhang, H., Van Camp, M. A., Vuletic, V. Squeezing the collective spin of a dilute atomic ensemble by cavity feedback, A linear AC trap for polar molecules in their ground state. She subsequently pursued … Monika Schleier-Smith is Assistant Professor of Physics at Stanford University. The interaction of a one-dimensional tube with a two-dimensional substrate then leads to an unusual registry phenomenon not visible in standard layer-on-layer growth: the system develops favorable orientations which clearly are incommensurate.

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